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Gas sensing mechanism of dissolved gases in transformer oil on Ag-MoS2 monolayer: A DFT study

机译:Ag-MOS2单层变压器油中溶解气体的气体传感机制:DFT研究

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Based on the density functional theory (DFT), the adsorption capabilities and electronic properties of Ag-MoS2 monolayer were discussed to fully discover the gas sensing performance to transformer oil decomposed gases (H-2, CO, CH4, C2H6, C2H4 and C2H2). Specifically, the adsorption structure, adsorption energy, Mulliken charge analysis, deformation charge density, density of state (DOS), frontier molecular orbital analysis and band structure were explored. The analysis results illustrate that the adsorption to CO, C2H4 and C2H2 is strong, which is superior to the adsorption of H-2, CH4 and C2H6. The narrower band gaps and increased electrical conductivity in all adsorption structures indicate that Ag-MoS2 monolayer is promising for the detection of studied gases. Therefore, the present study proposes an effective gas-sensing material to estimate the working state and insulation level of power transformers.
机译:基于密度泛函理论(DFT),讨论了AG-MOMOL2单层的吸附能力和电子性质,以充分发现变压器油分解气体的气体感测性能(H-2,CO,CH4,C2H6,C2H4和C2H2) 。 具体地,探索了吸附结构,吸附能量,穆利克·电荷分析,变形电荷密度,状态密度(DOS),前沿分子轨道分析和带结构。 分析结果表明,对CO,C2H4和C2H2的吸附强,其优于H-2,CH 4和C 2 H6的吸附。 所有吸附结构中的较窄带间隙和电导率提高表明AG-MOS2单层对研究的检测有望。 因此,本研究提出了一种有效的气体传感材料来估计电力变压器的工作状态和绝缘水平。

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